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A STUDY OF SHIP'S FRICTIONAL RESISTANCE IN EXTREMELY SHALLOW WATER

机译:极浅水中船舶的摩擦阻力研究

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In ship model tests, a model-ship correlation line (e.g., the ITTC57 formula) is used to calculate the frictional resistance of both the ship and its scaled model. However, this line is designed for deep water and the effects of water depth is not considered. Research has been conducted to improve the correlation line in shallow water, but studies of the extremely shallow water case (depth/draft, h/T < 1.2) are rare. This study focuses on the friction of two ship types in extremely shallow water, where the ship's boundary layer cannot develop freely. The physical details are analyzed based on the data generated with Computational Fluid Dynamics (CFD) calculations. The results show that for certain ship types at the same Reynolds number, the frictional resistance becomes smaller when the water is shallower. The geometry of the ship, in addition to the Reynolds number, becomes essential to the prediction of ship's friction in extremely shallow water. Therefore, this scenario is different from intermediate shallow and deep water, and the prediction method should be considered separately. The data and analysis shown in this study can help to improve the understanding and prediction of ship's frictional resistance in extremely shallow water.
机译:在船舶模型测试中,模型-船舶相关线(例如,ITTC57公式)用于计算船舶及其缩放模型的摩擦阻力。但是,这条线是为深水设计的,因此未考虑水深的影响。已经进行了改善浅水相关线的研究,但是很少研究极浅水情况(深度/吃水深度,h / T <1.2)。这项研究的重点是两种船型在极浅水中的摩擦,在这种情况下,船的边界层无法自由发展。根据计算流体动力学(CFD)计算生成的数据来分析物理细节。结果表明,对于某些具有相同雷诺数的船舶,当水浅时,摩擦阻力变小。除雷诺数外,船舶的几何形状对于预测极浅水域中的船舶摩擦力至关重要。因此,这种情况不同于中间浅水区和深水区,因此应单独考虑预测方法。这项研究中显示的数据和分析可以帮助提高对极浅水中船舶摩擦阻力的理解和预测。

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